Ceramic hydroxyapatite chromatography plays a critical role in bispecific antibody purification process for impurity removal

Author:

Waller Jessica A1,Zheng Ji1,Dyer Rachel2,Slaney Thomas3,Wu Wei3,Tao Li3,Ghose Sanchayita2

Affiliation:

1. Biologics Development, Bristol Myers Squibb , Summit, NJ 07901 USA

2. Biologics Development, Bristol Myers Squibb , Devens, MA 01434 USA

3. Biologics Development, Bristol Myers Squibb , New Brunswick, NJ 08901 USA

Abstract

Abstract Background Significant challenges exist in downstream purification of bispecific antibodies (BsAbs) due to the complexity of BsAb architecture. A unique panel of mispaired species can result in a higher level of product-related impurities. In addition to process-related impurities such as host cell proteins (HCPs) and residual DNA (resDNA), these product-related impurities must be separated from the targeted BsAb product to achieve high purity. Therefore, development of an efficient and robust chromatography purification process is essential to ensure the safety, quality, purity and efficacy of BsAb products that consequently meet regulatory requirements for clinical trials and commercialization. Methods We have developed a robust downstream BsAb process consisting of a mixed-mode ceramic hydroxyapatite (CHT) chromatography step, which offers unique separation capabilities tailored to BsAbs, and assessed impurity clearance. Results We demonstrate that the CHT chromatography column provides additional clearance of low molecular weight (LMW) and high molecular weight (HMW) species that cannot be separated by other chromatography columns such as ion exchange for a particular BsAb, resulting in ≥98% CE-SDS (non-reduced) purity. Moreover, through Polysorbate-80 (PS-80) spiking and LC–MS HCP assessments, we reveal complete clearance of potential PS-80-degrading HCP populations in the CHT eluate product pool. Conclusions In summary, these results demonstrate that CHT mixed-mode chromatography plays an important role in separation of product- and process-related impurities in the BsAb downstream process.

Funder

Bristol Myers

Publisher

Oxford University Press (OUP)

Subject

Immunology,Immunology and Allergy

Reference30 articles.

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